Numerical Investigations of a Vertical Axis Wind Turbine with Variable Pitch

 

F. Frunzulica, C. Olteanu, A. Dumitrache, D. Crunteanu

 

2017/04/25

Abstract

In the last decades, the wind energy became more attractive to Romania, and thus many resources are allocated to develop the energetic systems based on wind energy. In this work the performances of a variable-pitch vertical axis wind turbine were investigated using CFD (ANSYS Fluent). A computational methodology has been developed which uses the moving grid option offered by the ANSYS Fluent code, to evaluate amount of energy extracted from the wind. A transient simulation is done for fixed pitch and variable pitch vertical axis wind turbine using a k ƒ{ƒç SST (Shear Stress Transport) turbulence model. Main parameters like moment coefficient Cm, and power coefficient CP are investigated. The conclusion was that the variable-pitch vertical axis wind turbine has the best power coefficient at low/moderate tip speed ratio.

Published in: Renewable Energy & Power Quality Journal (RE&PQJ, Nº. 15)
Pages: 831-836 Date of Publication: 2017/04/25
ISSN: 2172-038X Date of Current Version:

REF: 488-17

Issue Date: April 2017
DOI:10.24084/repqj15.488 Publisher: EA4EPQ

Authors and affiliations

F. Frunzulica(1,2), C. Olteanu(3), A. Dumitrache(2), D. Crunteanu(1)
1. Department of Aerospace Engineering. POLITEHNICA University of Bucharest, Romania
2 “Gh. Mihoc – C. Iacob” Institute of Mathematical Statistics and Applied Mathematics, Bucharest, Romania

Key word

VAWT, variable-pitch, CFD, power coefficient.

References

[1] “HAWT versus VAWT: Small VAWTs find a clear niche” Refocus 4, 2003, pp. 44-46.
[2] I. Nila, R. Bogateanu and M. Stere, “Small power wind turbine (Type Darrieus)”, INCAS BULLETIN, 4, 2012, pp. 135-142.
[3] M. Islam, D. S. K. Ting, and A. Fartaj, Aerodynamic Models for Darrieus-Type Straight-Bladed Vertical Axis Wind Turbines, Renewable & Sustainable Energy Reviews, Vol. 12, 2008, pp. 1087-1109.
[4] L. Lazauskas, Three pitch control system for vertical axis wind turbines compared, Wind Engineering, 16, 1992, pp. 269-282.
[5] *** Ansys Fluent 13. User’s guide. Fluent documentation.
[6] I. Paraschivoiu, O. Trifu, and F. Saeed, H-Darrieus wind turbine with blade pitch control, International Journal of Rotating Machinery, 2009, Article ID 505343, 2009, 7 pages; http://dx.doi.org/10.1155/2009/505343.
[7] I. S. Hwang, S. Y. Min, I. O. Jeong, Y. H. Lee and S. J. Kim, Efficiency improvement of a new vertical axis wind turbine by individual active control of blade motion, Proc. SPIE 6173, 617311, 2006; http://dx.doi.org/10.1117/12.658935.
[8] S. J. Chen, Z. Chen, S. Biswas, J. J. Miau, and C. H. Hsieh, Torque and power coefficients of a vertical axis wind turbine with optimal pitch control, ASME 2010-27224, ASME 2010 Power Conference, July 13-15, 2010, Chicago.
[9] N. Fujisawa and M. Takeuchi, Flow Visualization and PIV measurements of Flow Field around a Darrieus Rotor in Dynamic Stall, Journal of Visualization, 1, 1999, pp. 379-386.